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    • 2. 发明申请
    • Solid-State General Illumination With Broadband White LED And Integrated Heat Sink
    • 宽带白光LED和集成散热器的固态通用照明
    • US20100198030A1
    • 2010-08-05
    • US12761301
    • 2010-04-15
    • David A. BenaronIllian H. ParachikovMichael R. Fierro
    • David A. BenaronIllian H. ParachikovMichael R. Fierro
    • A61B5/1455
    • A61B5/14551A61B5/0261
    • A solid-state illuminator (103) for improved light delivery efficiency in general illumination in which a solid-state, broadband white LED light source (105) is coupled directly and advantageously to an integrated heat-sink or cooler (347) for thermal management. The integrated heat sink or cooler (347) is in thermal contact with the LED light source wires, bulb or lens, and may be placed prior to the light source end cap. The thermal management advantageously allows for more efficient and lower operating temperature at the LED light source, reducing the amount of power needed to produce a given amount of usable light, allowing delivered light intensity and/or light power density, and further facilitating integration of the illuminator and heat-sink or cooler (347) into a general illumination device or system. Methods of manufacturing are also disclosed.
    • 一种固态照明器(103),用于改善一般照明中的光传输效率,其中固态宽带白光LED光源(105)直接有利地连接到集成散热器或冷却器(347)上,用于热管理 。 集成散热器或冷却器(347)与LED光源线,灯泡或透镜热接触,并且可以放置在光源端盖​​之前。 热管理有利地允许在LED光源下更有效和更低的操作温度,减少产生给定量的可用光所需的功率量,允许传递的光强度和/或光功率密度,并进一步促进 照明器和散热器或冷却器(347)放入通用照明装置或系统中。 还公开了制造方法。
    • 4. 发明申请
    • Broadband solid-state spectroscopy illuminator and method
    • 宽带固态光谱仪和方法
    • US20080188727A1
    • 2008-08-07
    • US12101906
    • 2008-04-11
    • David A. BenaronIllian H. ParachikovMichael R. Fierro
    • David A. BenaronIllian H. ParachikovMichael R. Fierro
    • A61B5/1455A61B5/0402
    • A61B5/412A61B1/00165A61B5/0075A61B5/0084A61B5/14558A61B5/1459A61B5/42G01J3/10G01N2201/062
    • An improved spectroscopy illuminator (103) for generating broadband light and for delivering the light to a sample with an improved delivery efficiency, for higher optical density and/or reduced thermal transfer uses a solid-state broadband white LED (107) to produce broadband light (114), which is then transmitted to a sample region (125), such as a living tissue or blood in vivo or a biological sample in a spectrophotometer target region. The solid-state source keeps both the illuminator and sample cool during operation, allowing the illuminator to be integrated into the tip of a medical probe, a medical system such as an oximeter, or other monitoring systems or devices making measurements based on light scattering, absorbance, fluorescence, phosphorescence, Raman effects, use of a contrast agent, or other known spectroscopy techniques. Systems incorporating the improved illuminator, and methods of use are also disclosed.
    • 一种改进的光谱照明器(103),用于产生宽带光并用于将光输送到具有改进的输送效率的样品,用于更高的光密度和/或降低的热转印使用固态宽带白光LED(107)产生宽带光 (114),然后将其传播到样品区域(125),例如活体组织或体内血液或分光光度计目标区域中的生物样品。 固态源在操作期间保持照明器和样品冷却,允许照明器集成到医疗探针的尖端,诸如血氧计的医疗系统或基于光散射进行测量的其它监测系统或装置, 吸光度,荧光,磷光,拉曼效应,造影剂的使用或其他已知的光谱技术。 还公开了结合改进的照明器的系统和使用方法。
    • 5. 发明申请
    • Integrated White LED Illuminator and Color Sensor Detector System and Method
    • 集成白色LED照明器和色彩传感器检测器系统和方法
    • US20090187086A1
    • 2009-07-23
    • US12404006
    • 2009-03-13
    • David A. BenaronIllian H. ParachikovMichael R. Fierro
    • David A. BenaronIllian H. ParachikovMichael R. Fierro
    • A61B5/1455
    • A61B5/14551A61B5/0261
    • An improved illuminator (103) for producing broadband light and delivering said light to a target (125) for measuring the color of the target which incorporates an integrated system comprising a solid-state white LED source (105) to illuminate the target with continuous, broadband illuminating light (114). After interaction with the sample, returning light (107) is either collected by a detector or a light collector such as fiber (141), or processed and analyzed by an analysis system such as color monitor (267), or both, creating a real-time integrated color sensor device or system that enables color detection, monitoring, identification, or analysis. A solid-state illuminator integrated with a color detector advantageously allows for a more compact, reduced heat producing, and more energy efficient manufacturable device, and further facilitates integration of the illuminator and detector into a microchip or lab-on-chip device or system. Methods of use are also disclosed.
    • 一种改进的照明器(103),用于产生宽带光并将所述光传送到目标(125),用于测量目标的颜色,所述目标的结合包括固态白色LED源(105)的集成系统,以用连续的方式照射目标, 宽带照明灯(114)。 在与样品相互作用之后,返回光(107)由检测器或诸如光纤(141)的光收集器收集,或者通过分析系统如彩色监视器(267)或两者进行处理和分析,从而产生真实的 时间集成的颜色传感器设备或系统,可实现颜色检测,监控,识别或分析。 与彩色检测器集成的固态照明器有利地允许更紧凑,更少的发热和更节能的可制造装置,并且进一步便于将照明器和检测器集成到微芯片或片上实验室装置或系统中。 还公开了使用方法。
    • 6. 发明申请
    • Metabolism- or Biochemical-Based Anti-Spoofing Biometrics Devices, Systems, and Methods
    • 代谢或生物化学反欺骗生物特征的设备,系统和方法
    • US20080226137A1
    • 2008-09-18
    • US12049122
    • 2008-03-14
    • David A. BenaronIllian H. ParachikovMichael Fierro
    • David A. BenaronIllian H. ParachikovMichael Fierro
    • G06K9/00
    • G06K9/0012A61B5/0059A61B5/117A61B5/417G01R33/465
    • A biometric device for detecting biological tissue based upon ratiometric measurements of metabolic and/or biochemical intermediates is provided in which a radiation source (103) is electromagnetically coupled to a target region (125). A radiation sensor (155) receives emission signals (128) from the target region as a result of emitted radiation (121) interacting with the target region. A CPU (167) receives a signal from the sensor, and provides a biometric output signal based upon the presence of live, healthy tissue versus sham or dead tissue. Optionally, a conventional, non-metabolism, non-biochemical-based biometric sensor can be incorporated into the present invention, and the biometric output signal is then a result of both the metabolism- and/or biochemical based and non-metabolism non-biochemical-based biometric determinations. A method of performing this biometric analysis is also described.
    • 提供了一种用于基于代谢和/或生物化学中间体的比例测量来检测生物组织的生物测定装置,其中辐射源(103)电磁耦合到目标区域(125)。 由于与目标区域相互作用的发射辐射(121)的结果,辐射传感器(155)从目标区域接收发射信号(128)。 CPU(167)从传感器接收信号,并且基于存在的健康组织与假手术或死组织的存在来提供生物测定输出信号。 任选地,可以将常规的非代谢非生物化学生物测定传感器并入本发明,然后生物测定输出信号是代谢和/或生物化学和非代谢非生物化学的结果 的生物测定。 还描述了执行该生物特征分析的方法。